Optimal one-dimensional apodizations and shaped pupils for planet finding coronagraphy.
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[1] Robert J. Vanderbei,et al. Linear Programming: Foundations and Extensions , 1998, Kluwer international series in operations research and management service.
[2] R. Vanderbei. LOQO user's manual — version 3.10 , 1999 .
[3] James P. Mills,et al. Direct imaging of nonsolar planets with infrared telescopes using apodized coronagraphs. , 1991, Applied optics.
[4] Guy Indebetouw,et al. Optimal apodizing properties of Gaussian pupils. , 1990 .
[5] W. Traub,et al. A Coronagraph with a Band-limited Mask for Finding Terrestrial Planets , 2002, astro-ph/0203455.
[6] P. Nisenson,et al. Detection of Earth-like Planets Using Apodized Telescopes , 2001, astro-ph/0101241.
[7] R. Vanderbei,et al. Spiderweb Masks for High-Contrast Imaging , 2003, astro-ph/0303049.
[8] D. Slepian,et al. Prolate spheroidal wave functions, fourier analysis and uncertainty — II , 1961 .
[9] D. Spergel. A New Pupil for Detecting Extrasolar Planets , 2001, astro-ph/0101142.
[10] R. Vanderbei,et al. Extrasolar Planet Finding via Optimal Apodized-Pupil and Shaped-Pupil Coronagraphs , 2003 .
[11] Mark Clampin,et al. The 4-m space telescope for investigating extrasolar Earth-like planets in starlight: TPF is HST2 , 2003, SPIE Astronomical Telescopes + Instrumentation.
[12] R. Vanderbei,et al. Circularly Symmetric Apodization via Star-shaped Masks , 2003, astro-ph/0305045.
[13] D. Slepian. Analytic Solution of Two Apodization Problems , 1965 .